Department of Chemistry, University of Parma , Parco Area delle Scienze 17/A, Parma 43123, Italy.
I.N.B.B. Consortium , Viale delle Medaglie D'Oro, 305, 00136 Roma, Italy.
Org Lett. 2016 Nov 4;18(21):5452-5455. doi: 10.1021/acs.orglett.6b02363. Epub 2016 Oct 21.
A synthetic strategy for the production of polyfunctional PNAs bearing substituent groups both on the nucleobase and on the backbone C5 carbon of the same monomer is described; this is based on the use of a tris-orthogonally protected monomer and subsequent solid-phase selective functionalization. This strategy can be used for synthesizing PNAs that are not readily accessible by use of preformed modified monomers. As an example, a PNA-based probe that undergoes a switch in its fluorescence emission upon hybridization with a target oligonucleotide, induced by tailor-made movement of two pyrene substituent groups, was synthesized.
描述了一种在同一单体的碱基和主链 C5 碳上同时带有取代基的多功能 PNAs 的合成策略;这是基于使用三保护基单体和随后的固相选择性官能化。该策略可用于合成使用预形成的修饰单体不易获得的 PNAs。例如,合成了一种基于 PNA 的探针,该探针在与靶寡核苷酸杂交时,通过两个芘取代基的定制运动诱导其荧光发射发生变化。